Search Results - "Jia, Dongzhou"

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  1. 1

    Experimental evaluation of the lubrication performance of MoS2/CNT nanofluid for minimal quantity lubrication in Ni-based alloy grinding by Zhang, Yanbin, Li, Changhe, Jia, Dongzhou, Zhang, Dongkun, Zhang, Xiaowei

    “…A nanofluid minimum quantity lubrication with addition of one kind of nanoparticle has several limitations, such as grinding of difficult-to-cutting materials…”
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    Journal Article
  2. 2

    Effect of friction coefficient on chip thickness models in ductile-regime grinding of zirconia ceramics by Yang, Min, Li, Changhe, Zhang, Yanbin, Jia, Dongzhou, Li, Runze, Hou, Yali, Cao, Huajun

    “…The removal of material in the ductile regime while improving machining efficiency is currently the technical bottleneck in grinding zirconia ceramics…”
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    Journal Article
  3. 3

    Experimental evaluation of surface topographies of NMQL grinding ZrO2 ceramics combining multiangle ultrasonic vibration by Jia, Dongzhou, Li, Changhe, Zhang, Yanbin, Yang, Min, Zhang, Xianpeng, Li, Runze, Ji, Heju

    “…Nanofluid minimum quantity lubrication (NMQL) technique has many technological and economic advantages in grinding operation. NMQL can improve grinding…”
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  4. 4

    Experimental study on the effect of nanoparticle concentration on the lubricating property of nanofluids for MQL grinding of Ni-based alloy by Zhang, Yanbin, Li, Changhe, Jia, Dongzhou, Li, Benkai, Wang, Yaogang, Yang, Min, Hou, Yali, Zhang, Xiaowei

    Published in Journal of materials processing technology (01-06-2016)
    “…•Different concentration nanofluids jet MQL grinding with Ni-based alloy was experimented.•Friction coefficient, surface roughness and autocorrelation function…”
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  5. 5

    Tribological properties under the grinding wheel and workpiece interface by using graphene nanofluid lubricant by Cui, Xin, Li, Changhe, Zhang, Yanbin, Jia, Dongzhou, Zhao, Yongjun, Li, Runze, Cao, Huajun

    “…In nanofluid minimum quantity lubrication (NMQL) grinding of titanium (Ti) alloy, existing nanoparticles cannot solve the technical bottleneck of high surface…”
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  6. 6

    Milling force and surface morphology of 45 steel under different Al2O3 nanofluid concentrations by Duan, Zhenjing, Yin, Qingan, Li, Changhe, Dong, Lan, Bai, Xiufang, Zhang, Yanbin, Yang, Min, Jia, Dongzhou, Li, Runze, Liu, Zhanqiang

    “…Nanofluid minimum quantity lubrication (NMQL) is a resource-saving, environment-friendly, and efficient green processing technology. Cottonseed oil can form a…”
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  7. 7

    Effects of Physicochemical Properties of Different Base Oils on Friction Coefficient and Surface Roughness in MQL Milling AISI 1045 by Yin, Qingan, Li, Changhe, Dong, Lan, Bai, Xiufang, Zhang, Yanbin, Yang, Min, Jia, Dongzhou, Li, Runze, Liu, Zhanqiang

    “…Minimum quantity lubrication (MQL) is an emerging green and resource-saving machining technique jetting minute amount lubricants and gas after mixing and…”
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    Journal Article
  8. 8

    Nano-enhanced biolubricant in sustainable manufacturing: From processability to mechanisms by Zhang, Yanbin, Li, Hao Nan, Li, Changhe, Huang, Chuanzhen, Ali, Hafiz Muhammad, Xu, Xuefeng, Mao, Cong, Ding, Wenfeng, Cui, Xin, Yang, Min, Yu, Tianbiao, Jamil, Muhammad, Gupta, Munish Kumar, Jia, Dongzhou, Said, Zafar

    Published in Friction (01-06-2022)
    “…To eliminate the negative effect of traditional metal-working fluids and achieve sustainable manufacturing, the usage of nano-enhanced biolubricant (NEBL) is…”
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    Journal Article
  9. 9

    Temperature field model and experimental verification on cryogenic air nanofluid minimum quantity lubrication grinding by Zhang, Jianchao, Li, Changhe, Zhang, Yanbin, Yang, Min, Jia, Dongzhou, Hou, Yali, Li, Runze

    “…Considering the poor lubricating effect of cryogenic air (CA) and inadequate cooling ability of nanofluid minimum quantity lubrication (NMQL), this work…”
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  10. 10

    Prediction model of volume average diameter and analysis of atomization characteristics in electrostatic atomization minimum quantity lubrication by Jia, Dongzhou, Li, Changhe, Liu, Jiahao, Zhang, Yanbin, Yang, Min, Gao, Teng, Said, Zafar, Sharma, Shubham

    Published in Friction (01-11-2023)
    “…Minimum quantity lubrication (MQL) is a relatively efficient and clean alternative to flooding workpiece machining. Electrostatic atomization has the merits of…”
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    Journal Article
  11. 11

    Experimental verification of nanoparticle jet minimum quantity lubrication effectiveness in grinding by Jia, Dongzhou, Li, Changhe, Zhang, Dongkun, Zhang, Yanbin, Zhang, Xiaowei

    “…In our experiment, K-P36 precision numerical control surface grinder was used for dry grinding, minimum quantity lubrication (MQL) grinding, nanoparticle jet…”
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    Journal Article
  12. 12

    Specific Energy and G ratio of Grinding Cemented Carbide under Different Cooling and Lubrication Conditions by Wu, Wentao, Li, Changhe, Yang, Min, Zhang, Yanbin, Jia, Dongzhou, Hou, Yali, Li, Runze, Cao, Huajun, Han, Zhiguang

    “…Workpiece surface integrity deterioration is a bottleneck in minimum quantity lubrication (MQL) grinding cemented carbide. However, nanofluids prepared by…”
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  13. 13

    Spectral analysis and power spectral density evaluation in Al2O3 nanofluid minimum quantity lubrication milling of 45 steel by Yin, Qingan, Li, Changhe, Zhang, Yanbin, Yang, Min, Jia, Dongzhou, Hou, Yali, Li, Runze, Dong, Lan

    “…Nanofluid minimum quantity lubrication (NMQL) is one of the main modes of sustainable manufacturing. It is an environment-friendly, energy-saving, and highly…”
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  14. 14

    Analysis of volume ratio of castor/soybean oil mixture on minimum quantity lubrication grinding performance and microstructure evaluation by fractal dimension by Guo, Shuming, Li, Changhe, Zhang, Yanbin, Yang, Min, Jia, Dongzhou, Zhang, Xianpeng, Liu, Guotao, Li, Runze, Bing, Zhaorong, Ji, Heju

    Published in Industrial crops and products (01-01-2018)
    “…•Minimum Quantity Lubrication grinding using a mixture of castor and soybean oils as lubricant oils was evaluated.•Fractal dimension are used to analyze…”
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  15. 15

    Spraying parameter optimization and microtopography evaluation in nanofluid minimum quantity lubrication grinding by Zhang, Xianpeng, Li, Changhe, Jia, Dongzhou, Gao, Teng, Zhang, Yanbin, Yang, Min, Li, Runze, Han, Zhiguang, Ji, Heju

    “…To overcome environmental problems, nanofluid minimum quantity lubrication (NMQL) has been utilized as a burgeoning alternative technique to conventional flood…”
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  16. 16
  17. 17

    Topography Modeling of Surface Grinding Based on Random Abrasives and Performance Evaluation by Zhang, Yanbin, Gong, Peng, Tang, Lizhi, Cui, Xin, Jia, Dongzhou, Gao, Teng, Dambatta, Yusuf Suleiman, Li, Changhe

    Published in Chinese journal of mechanical engineering (22-08-2024)
    “…The surface morphology and roughness of a workpiece are crucial parameters in grinding processes. Accurate prediction of these parameters is essential for…”
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    Journal Article
  18. 18

    Enhancement mechanisms of mechanical, electrical and thermal properties of carbon nanotube-copper composites: A review by Jia, Yilin, Zhou, Kun, Sun, Wanting, Ding, Min, Wang, Yu, Kong, Xiangqing, Jia, Dongzhou, Wu, Muhong, Fu, Ying

    “…Carbon nanotubes (CNTs), as potent reinforcements in composites, have demonstrated excellent strengthening effects when combined with copper in numerous recent…”
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  19. 19

    Investigation into the Heat Transfer Behavior of Electrostatic Atomization Minimum Quantity Lubrication (EMQL) during Grinding by He, Zhiyong, Jia, Dongzhou, Zhang, Yanbin, Qu, Da, Lv, Zhenlin, Zeng, Erjun

    Published in Lubricants (01-05-2024)
    “…Electrostatic atomization minimum quantity lubrication (EMQL) technology has been developed to address the need for environmentally friendly, efficient, and…”
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  20. 20

    Effect of Electroplastic-Assisted Grinding on Surface Quality of Ductile Iron by Feng, Shuo, Jia, Dongzhou, Zhang, Yanbin, Wu, Xiaoqiang, Guo, Erkuo, Xue, Rui, Gong, Taiyan, Yang, Haijun, Li, Xiaoxue, Jiang, Xin

    Published in Lubricants (01-08-2024)
    “…Ductile iron is a heterogeneous material. The presence of spherical graphite and a hard and brittle structure makes the surface of the workpiece easily form…”
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